Black Simon N, Collier Edwin A, Davey Roger J, Roberts Ron J
Process Engineering Group, PR&D, AstraZeneca, Macclesfield, Cheshire, SK10 2NA, United Kingdom.
J Pharm Sci. 2007 May;96(5):1053-68. doi: 10.1002/jps.20927.
The preparation of molecular salts as potential delivery vehicles for pharmaceutically active compounds is more common than current appreciation of the phenomena governing the solubility and isolation of salts suggests. In addition, it would appear that there are no reported measurements on a large enough data set for a serious structure-property relationship analysis to have been performed for this class of material. This means that at present, the ability to predict which salt forms will have desirable physical properties is essentially nonexistent. The work reported here sets out to explore these issues using new data on 17 salts obtained from a screen performed on the basic pharmaceutical ephedrine. The importance of solvent choice in salt formation, of salt selection in the control of bioavailability and of ternary phase equilibria in salt isolation and the relationship between a number of measured and calculated crystal properties are illustrated and discussed. The consequences of these relations for the general design, implementation, interpretation, and scale-up of salts screens are also explored.
制备分子盐作为药物活性化合物的潜在递送载体,比目前对盐的溶解度和分离现象的认识所表明的更为常见。此外,似乎还没有针对此类材料进行足够大的数据集测量,以进行严肃的结构-性质关系分析。这意味着目前基本上不存在预测哪种盐形式将具有理想物理性质的能力。本文报道的工作旨在利用从对碱性药物麻黄碱进行的筛选中获得的17种盐的新数据来探索这些问题。阐述并讨论了溶剂选择在盐形成中的重要性、盐选择在生物利用度控制中的重要性、盐分离中的三元相平衡以及一些测量和计算的晶体性质之间的关系。还探讨了这些关系对盐筛选的总体设计、实施、解释和放大的影响。